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Charge and energy transport in single quantum dot/organic hybrid nanostructures.

机译:单量子点/有机杂化纳米结构中的电荷和能量传输。

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摘要

Hybrid quantum dot/organic semiconductor systems are of great interest in optoelectronic and photovoltaic applications, because they combine the robust and tunable optical properties of inorganic semiconductors with the processability of organic thin films. In particular, cadmium selenide (CdSe) quantum dots coordinated with oligo-(phenylene vinylene) ligands have displayed a number of hybrid optical properties that make them particularly well-suited to these applications. When probed on an individual particle level, these so-called CdSe-OPV nanostructures display a number of surprising photophysical characteristics, including strong quenching of fluorescence from coordinating ligands, enhanced emission from the CdSe quantum dot core, suppression of fluorescence intermittency, and photon antibunching, all of which make them attractive in the applications described above. By correlating fluorescence properties with atomic force microscopy, the effects of ligands on quantum dot luminescence are elucidated.;In addition, recent studies on individual CdSe-OPV nanostructures have revealed a strong electronic coupling between the coordinating ligands and the nanocrystal core. These studies have shown that excitations in the organic ligands can strongly affect the electronic properties of the quantum dot, leading to linearly polarized optical transitions (both in absorption and emission) and polarization-modulated shifts in band edge emission frequency. These polarization effects suggest exciting new uses for these nanostructures in applications that demand the robust optical properties of quantum dots combined with polarization-switchable control of photon emission.
机译:混合量子点/有机半导体系统在光电子和光伏应用中非常受关注,因为它们将无机半导体的鲁棒性和可调光学特性与有机薄膜的可加工性结合在一起。特别地,与低聚-(亚苯基亚乙烯基)配体配位的硒化镉(CdSe)量子点显示出许多杂化光学特性,使其特别适合于这些应用。当在单个粒子水平上进行探测时,这些所谓的CdSe-OPV纳米结构显示出许多令人惊讶的光物理特性,包括配位体强烈的荧光猝灭,CdSe量子点核心的增强发射,抑制荧光间歇性和光子反聚束,所有这些使它们在上述应用程序中具有吸引力。通过将荧光性质与原子力显微镜相关联,阐明了配体对量子点发光的影响。此外,最近对单个CdSe-OPV纳米结构的研究表明,配体与纳米晶核之间存在强电子耦合。这些研究表明,有机配体中的激发会强烈影响量子点的电子特性,从而导致线性极化的光学跃迁(吸收和发射均发生)以及极化调制的带边发射频率发生偏移。这些偏振效应表明,在要求量子点具有鲁棒的光学特性并结合偏振可切换的光子发射控制的应用中,这些纳米结构具有令人兴奋的新用途。

著录项

  • 作者

    Early, Kevin T.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 104 p.
  • 总页数 104
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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